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GEOTHERMAL POWER PRODUCTION Emmonak Alaska

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GEOTHERMAL POWER PRODUCTION Emmonak Alaska ( geothermal-power-production-emmonak-alaska )

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Running head: GEOTHERMAL POWER PRODUCTION 10 Energy is a topic of great interest by the population of the United States. Today’s high cost of fossil fuels with respect to historical cost in the decades prior to 2000, have caused more of the population to ponder the whole energy cycle from the raw source to production to consumption and finally waste by-products. Industrial processes and residential home heating as well as cooking can result in incomplete combustion. Incomplete combustion of petroleum and coal yields numerous toxins, such as arsenic, dioxins, carbon dioxide (CO2), nitrous oxide (N2O), methane (CH4), and chlorofluorocarbons (CFC) just to name a few (Avakian, et al., 2002, p. 1155). The burning of these fuels also contributes to the problem of greenhouse gas accumulation and human health issues (Avakian et al., p. 1156). Integrating alternative energy sources, such as wind, solar, geothermal, and hydro, may be challenging and appear expensive now but it might be more challenging and expensive in the future to mitigate the harm of continuing to use fossil fuels. Statement of the Problem The recent demand for fossil fuels has increased world wide due to the economic growth of countries like China and India (Cox & Alm, 2008, Charts 1-5). The result of this increase in demand has driven the price of oil up to where it is extremely expensive for some small communities to purchase sufficient fuel to sustain their community power plants through the extreme cold and harsh Alaska winter months. China’s energy demand is second to that of the United States, even without India, its hunger alone will tax world resources (A hungry dragon, 2004). Rural communities were paying nearly $6 per gallon for heating fuel in September 2005 compared to $2.97 in Valdez during the same period (Journal of Commerce, 2006, p. 1). Although the differences between Alaska’s rural and

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